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Assessment of the fixation stiffness of some femoral stems of different designs.

机译:评估不同设计的一些股骨柄的固定刚度。

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BACKGROUND: Appropriate contour design of a femoral stem is important for the secure primary fixation. Although the relationship between the contour and stress or micro-motion at the fixation site has been analyzed, guidelines on stem design have not been established. METHODS: Different kinds of finite element models of three femoral stems were constructed for computer simulation. These models had the contour designs that head for the tight mechanical fixation by the different ways, respectively. Boundary and initial conditions were (i) rigid contact of the distal end of the model femur with the rigid base. (ii) Stepping load of 800 N or 1800 N was applied to the proximal top of the stem. (iii) Stepping load of 640 N or 1440 N was pulled from the greater trochanter of the femur as muscle force. The ratio of displacement to the vertical load, which was defined as fixation stiffness, was calculated. FINDINGS: The mean displacement of the intra-medullary cruciate stem was 27.6 nm. For the VerSys stem withsharp fins, the mean displacement was 32.9 nm. For the PerFix SV stem with a flange, the mean displacement was 52.8 nm. Vertical fixation stiffness estimated on the intra-medullary cruciate stem, the VerSys stem, and the PerFix SV stem was 461, 264, and 313 MN/mm, respectively. INTERPRETATION: Contour design of a femoral stem is important for achieving secure fixation, which prevents loosening. We introduce fixation stiffness as a measure to theoretically evaluate the primary fixation of femoral stems.
机译:背景:股骨柄合适的轮廓设计对于安全的一次固定很重要。尽管已经分析了轮廓与固定部位的应力或微动之间的关系,但尚未建立茎设计的指南。方法:建立了三种股骨柄的不同类型的有限元模型,用于计算机仿真。这些模型的轮廓设计分别通过不同的方式实现了紧密的机械固定。边界条件和初始条件是(i)股骨远端与刚性基体的刚性接触。 (ii)将800 N或1800 N的步进载荷施加到杆的近端顶部。 (iii)从股骨大转子以肌肉力拉出640N或1440N的步进载荷。计算出位移与垂直载荷之比,即固定刚度。结果:髓内十字形茎的平均位移为27.6 nm。对于带有锋利鳍片的VerSys杆,平均位移为32.9 nm。对于带法兰的PerFix SV阀杆,平均位移为52.8 nm。髓内十字形茎,VerSys茎和PerFix SV茎的垂直固定刚度估计分别为461、264和313 MN / mm。解释:股骨柄的轮廓设计对于实现牢固的固定非常重要,可以防止松动。我们引入固定刚度作为一种从理论上评估股骨干基本固定的方法。

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